Decision support system based on BWM for Analyzing success factors affecting the quality in the Iraqi construction projects

Q1 Engineering
Ali Hashim Yas, Mohammed Neamah Ahmed, Ahmed M. Abdulhadi
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引用次数: 0

Abstract

Creating a balance between cost, time, and quality in construction projects is always expected. It is possible to have a project with excellent quality and minimal cost, but at the expense of time, or vice versa. The goal of this paper is to discover, evaluate and prioritize the factors that most influence the desired construction projects' level of quality (success factors) in Iraq. Over a comprehensive review of literature, 11 potential quality-related factors were found to fall into the following five categories: client, contractor, design, materials, and project related factors. These factors' significance was determined using fuzzy Best Worst Method (BWM). Result shows the most three significant success factors influencing quality in the construction projects were related to contractor, client, and designer. These factors were financial competence of contractor, technical capability of client, and designer suitable selection with weights (30.84%, 15.58%, and 10.05%) respectively. These results conclude that maximization of the success factors will guarantee that the building sector achieves its quality objectives.
基于BWM的伊拉克建筑工程质量成功因素分析决策支持系统
在建设项目中,总是期望在成本、时间和质量之间取得平衡。有一个质量优良、成本最低的项目是可能的,但要以时间为代价,反之亦然。本文的目标是发现、评估和优先考虑最影响伊拉克所需建设项目质量水平的因素(成功因素)。通过对文献的全面审查,发现11个潜在的质量相关因素分为以下五类:客户、承包商、设计、材料和项目相关因素。采用模糊最佳-最差法(BWM)确定这些因素的显著性。结果表明,影响建筑工程质量的三个主要成功因素分别与承包商、客户和设计师有关。这些因素分别是承包商的财务能力、客户的技术能力和设计师的合适选择(权重分别为30.84%、15.58%和10.05%)。这些结果表明,成功因素的最大化将保证建筑行业实现其质量目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.90
自引率
0.00%
发文量
140
审稿时长
7 weeks
期刊介绍: *Industrial Engineering: 1 . Ergonomics 2 . Manufacturing 3 . TQM/quality engineering, reliability/maintenance engineering 4 . Production Planning 5 . Facility location, layout, design, materials handling 6 . Education, case studies 7 . Inventory, logistics, transportation, supply chain management 8 . Management 9 . Project/operations management, scheduling 10 . Information systems for production and management 11 . Innovation, knowledge management, organizational learning *Mechanical Engineering: 1 . Energy 2 . Machine Design 3 . Engineering Materials 4 . Manufacturing 5 . Mechatronics & Robotics 6 . Transportation 7 . Fluid Mechanics 8 . Optical Engineering 9 . Nanotechnology 10 . Maintenance & Safety *Computer Science: 1 . Computational Intelligence 2 . Computer Graphics 3 . Data Mining 4 . Human-Centered Computing 5 . Internet and Web Computing 6 . Mobile and Cloud computing 7 . Software Engineering 8 . Online Social Networks *Electrical and electronics engineering 1 . Sensor, automation and instrumentation technology 2 . Telecommunications 3 . Power systems 4 . Electronics 5 . Nanotechnology *Architecture: 1 . Advanced digital applications in architecture practice and computation within Generative processes of design 2 . Computer science, biology and ecology connected with structural engineering 3 . Technology and sustainability in architecture *Bioengineering: 1 . Medical Sciences 2 . Biological and Biomedical Sciences 3 . Agriculture and Life Sciences 4 . Biology and neuroscience 5 . Biological Sciences (Botany, Forestry, Cell Biology, Marine Biology, Zoology) [...]
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